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Updated: May 6, 2026

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Capillary Force Lithography for Cardiac Tissue Engineering
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限界を超えて:金大植(Dai-Sik Kim)の学術的遺産とビジョンへの賛辞
Jae Sung Ahn1, Kwang Jun Ahn2, Young-Mi Bahk3
1Smart Gym-Based Translational Research Center for Active Senior's Healthcare, Pukyong National University, Busan 48513, Republic of Korea.
Nanophotonics (Berlin, Germany)
|December 22, 2025
まとめ
本稿は、ナノフォトニクスのパイオニアである金大植(Dai-Sik Kim)教授を称えるものである。彼の表面プラズモニクス、近接場光学、テラヘルツ分光法に関する研究を探求し、光と物質の相互作用の研究を進めた。
科学分野:
- 光学科学
- ナノフォトニクス
背景:
- 金大植(Dai-Sik Kim)教授は光学科学の第一人者であった。
- 彼の研究は、国際的および国内の分野に大きな影響を与えた。
- 彼はナノフォトニクスと光と物質の相互作用に情熱を注いでいた。
研究 の 目的:
- 金大植(Dai-Sik Kim)教授の光学科学への貢献を記念すること。
- 彼の主要な研究分野とその影響を強調すること。
- 彼の研究に触発されたナノフォトニクスの進歩について議論すること。
主な方法:
- 表面プラズモニクスの探求。
- 近接場光学の調査。
- テラヘルツプラズモニクスと分光法の応用。
主要な成果:
- 光と物質の間の新しい相互作用を実証した。
- プラズモン現象の理解を深めた。
- 光学科学研究の限界を押し広げた。
結論:
- 金教授の遺産は、ナノフォトニクス研究のインスピレーションであり続けている。
- 彼の研究は、将来の光学科学の革新の基礎を築いた。
- 探求された分野は、科学的探求の重要な分野であり続けている。
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